By measuring the apparent reversal potential (aErev) of kainate- and alpha-amino-3-hydroxyl-5-methyl-4-isoxazole propionic acid (AMPA)-evoked currents associated with changes in extracellular Ca2+ concentration ([Ca2+]e), we have been able to identify embryonic dorsal horn neurons grown in tissue culture that express Ca(2+)-permeable non-N-methyl-D-aspartic acid (NMDA) receptors. 2. The relative expression of Ca(2+)-permeable and Ca(2+)-impermeable non-NMDA receptors varies from cell to cell. This was evident from the range of a ErevS observed for kainate-evoked currents in a 0 mM [Na+]e, 10 mM [Ca2+]e bath. Under these conditions, aErev ranged from -96 to -21 mV, suggesting that the percentage of the non-NMDA receptors on each neuron that are Ca(2+)-permeable is variable. 3. To determine the extent to which the variability in aErev is due to variable receptor expression rather than experimental variability, we compared the effects of changes in [Ca2+]e on kainate-evoked currents and NMDA-evoked currents on the same cells. Assuming that all of the NMDA receptors on each neuron have a similar Ca2+ permeability, this approach provides an index of the sensitivity of our assay system. The reversal potential of NMDA-evoked currents in 10 mM [Ca2+]e ranged from -30 to -7 mV, whereas on the same population of neurons, the aErev of kainate-evoked currents ranged from -92 to -40 mV. 4. The rectification properties of the non-NMDA currents were generally linear or outwardly rectifying in normal bath solution. When the PCa/PCs ratio in 0 mM [Na+]e, 10 mM [Ca2+]e bath solution was assessed as a function of the rectification index in standard bath, a poor correlation was found between Ca2+ permeability and the rectification index. 5. The aErev of kainate-evoked currents was similar to that of cyclothiazide-enhanced AMPA-evoked currents observed on the same cells (-66.5 +/- 18.4 and -64.0 +/- 13.9 mV, mean +/- SD, respectively). This suggests that kainate is primarily activating the AMPA receptor and that the majority of non-NMDA receptors on embryonic dorsal horn neurons in culture are high-affinity AMPA receptors. 6. Immunocytochemical evidence suggests that the AMPA receptor subunits GluR1-4 are expressed to a variable degree from cell to cell in our cultures. We found evidence for low levels of expression of the kainate receptor subunits GluR5-7. The immunocytochemical observations support the physiological data indicating that much of the kainate-evoked current recorded in our experiments can be accounted for by kainate activation of AMPA receptors.(ABSTRACT TRUNCATED AT 400 WORDS)
摘要
通过测量与细胞外钙离子浓度([Ca2+]e)变化相关的海人酸和α-氨基-3-羟基-5-甲基-4-异恶唑丙酸(AMPA)诱发电流的表观反转电位(aErev),我们得以鉴定出在组织培养中生长的表达钙通透型非N-甲基-D-天冬氨酸(NMDA)受体的胚胎背角神经元。2. 钙通透型和钙不通透型非NMDA受体的相对表达在细胞间存在差异。这在0 mM [Na+]e、10 mM [Ca2+]e浴槽中观察到的海人酸诱发电流的aErevS范围中很明显。在这些条件下,aErev范围为-96至-21 mV,表明每个神经元上钙通透型非NMDA受体的百分比是可变的。3. 为了确定aErev的变异性在多大程度上是由于受体表达的变化而非实验变异性,我们比较了[Ca2+]e变化对同一细胞上海人酸诱发电流和NMDA诱发电流的影响。假设每个神经元上所有的NMDA受体具有相似的钙通透性,这种方法提供了我们检测系统敏感性的指标。10 mM [Ca2+]e中NMDA诱发电流的反转电位范围为-30至-7 mV,而在同一群神经元上,海人酸诱发电流的aErev范围为-92至-40 mV。4. 在正常浴槽溶液中,非NMDA电流的整流特性通常是线性的或外向整流的。当在0 mM [Na+]e、10 mM [Ca2+]e浴槽溶液中评估PCa/PCs比值作为标准浴槽中整流指数的函数时,发现钙通透性与整流指数之间相关性较差。5. 同一细胞上海人酸诱发电流的aErev与环噻嗪增强的AMPA诱发电流的aErev相似(分别为-66.5±18.4和-64.0±13.9 mV,平均值±标准差)。这表明海人酸主要激活AMPA受体,并且培养的胚胎背角神经元上的大多数非NMDA受体是高亲和力的AMPA受体。6. 免疫细胞化学证据表明,AMPA受体亚基GluR1-4在我们的培养物中细胞间的表达程度不同。我们发现了海人酸受体亚基GluR5-7低水平表达的证据。免疫细胞化学观察结果支持了生理学数据,表明我们实验中记录的大部分海人酸诱发电流可由海人酸对AMPA受体的激活来解释。(摘要截取自400字)